电动汽车双向电池充电器大信号黑箱建模

Antreas Naziris, Galo Guarderas, A. Francés, R. Asensi, J. Uceda
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引用次数: 7

摘要

介绍了一种新的电动汽车双向电池充电器黑盒建模方法。随着电动汽车普及率的提高,接入电网的电池充电器数量也在不断增加,如何评估电池充电器数量的增加对电网性能的影响是一个挑战。黑箱模型能够使用应用于待建模设备的一系列测试所产生的信息来表示电池充电器的行为。针对工作条件的可变性,提出了一种基于多面体结构的大信号建模策略。这种建模策略将在实际的商用双向电池充电器上进行测试。本文的实验测试说明了网格到车辆(G2V)和车辆到网格(V2G)的操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-Signal Black-Box Modelling of Bidirectional Battery Charger for Electric Vehicles
This paper introduces a new approach of black-box modelling of bidirectional battery chargers for Electric Vehicles (EV). Due to the increasing penetration of EV, the number of battery chargers connected to the grid is also increasing, being a challenge to assess the impact of such growing number of battery chargers into the grid performance. The black-box model is able to represent the behavior of the battery charger using the information generated from a number of tests applied to the equipment to be modeled. Due to the variability of the operating conditions a large-signal modelling strategy based on the polytopic structure is proposed. This modelling strategy will be tested with an actual commercial bidirectional battery charger. The experimental tests of the paper illustrate the Grid to Vehicle (G2V) and Vehicle to Grid (V2G) operations.
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